We report a robust synthesis of Ag@Au core–shell nanocubes by directly depositing Au atoms on the surfaces of Ag nanocubes as conformal, ultrathin shells. Our success relies on the introduction of a strong reducing agent to compete with and thereby block the galvanic replacement between Ag and HAuCl<sub>4</sub>. An ultrathin Au shell of 0.6 nm thick was able to protect the Ag in the core in an oxidative environment. Significantly, the core–shell nanocubes exhibited surface plasmonic properties essentially identical to those of the original Ag nanocubes, while the SERS activity showed a 5.4-fold further enhancement owing to an improvement in chemical enhancement. The combination of excellent SERS activity and chemical stability may enable a ...
The galvanic replacement reaction is a robust tool for the controlled synthesis of hollow and semiho...
International audienceAu nanoparticles (NPs) characterized by distinct surface chemistry (including ...
AbstractThis Letter reports on the synthesis of Ag–Au nanoparticles (NPs) with controlled structures...
We report a strategy to complement the galvanic replacement reaction between Ag nanocubes and HAuCl<...
We report the defect-assisted deposition of Au on Ag nanocubes for the generation of Ag@Au core–shel...
This paper describes a facile method for generating Au@Ag core-shell nanocubes with edge lengths con...
Recent studies have conclusively shown that the plasmonic performance of Au nanostructures can be en...
We have synthesized Au@Ag core–shell nanocubes containing Au cores with varying shapes and sizes thr...
The formation of AgShell–AuCore nanoparticles by the reduction of Ag+ ions on preformed Au NPs, medi...
AbstractBimetallic nanostructures have received considerable attention in recent years due to their ...
Hollow AgAu nanostructures have a myriad of potential applications related to their strong and tunab...
Hollow AgAu nanostructures have a myriad of potential applications related to their strong and tunab...
Predominantly covered by a single type of {100} facets, Cu nanocubes are attractive catalytic materi...
Hollow AgAu nanostructures have a myriad of potential applications related to their strong and tunab...
This work describes a facile and effective method for synthesis of concave Au@Pt nanocubes via a gal...
The galvanic replacement reaction is a robust tool for the controlled synthesis of hollow and semiho...
International audienceAu nanoparticles (NPs) characterized by distinct surface chemistry (including ...
AbstractThis Letter reports on the synthesis of Ag–Au nanoparticles (NPs) with controlled structures...
We report a strategy to complement the galvanic replacement reaction between Ag nanocubes and HAuCl<...
We report the defect-assisted deposition of Au on Ag nanocubes for the generation of Ag@Au core–shel...
This paper describes a facile method for generating Au@Ag core-shell nanocubes with edge lengths con...
Recent studies have conclusively shown that the plasmonic performance of Au nanostructures can be en...
We have synthesized Au@Ag core–shell nanocubes containing Au cores with varying shapes and sizes thr...
The formation of AgShell–AuCore nanoparticles by the reduction of Ag+ ions on preformed Au NPs, medi...
AbstractBimetallic nanostructures have received considerable attention in recent years due to their ...
Hollow AgAu nanostructures have a myriad of potential applications related to their strong and tunab...
Hollow AgAu nanostructures have a myriad of potential applications related to their strong and tunab...
Predominantly covered by a single type of {100} facets, Cu nanocubes are attractive catalytic materi...
Hollow AgAu nanostructures have a myriad of potential applications related to their strong and tunab...
This work describes a facile and effective method for synthesis of concave Au@Pt nanocubes via a gal...
The galvanic replacement reaction is a robust tool for the controlled synthesis of hollow and semiho...
International audienceAu nanoparticles (NPs) characterized by distinct surface chemistry (including ...
AbstractThis Letter reports on the synthesis of Ag–Au nanoparticles (NPs) with controlled structures...